电针
极限抗拉强度
生物相容性
材料科学
腐蚀
生物医学工程
扫描电子显微镜
细胞毒性
针灸科
刺激
电极
冶金
复合材料
医学
化学
内科学
病理
体外
生物化学
替代医学
物理化学
作者
Sanghun Lee,Gwang-Ho Choi,Chang Hoon Lee,Yu‐Kyoung Kim,Saebhom Lee,Sung‐Jin Cho,Sunhee Yeon,Sun‐Mi Choi,Yeonhee Ryu
摘要
Background . Electro Acupuncture (EA) uses the acupuncture needle as an electrode to apply low-frequency stimulation. For its safe operation, it is essential to prevent any corrosion of the acupuncture needle. Objective . The aim of this study is to find an available material and determine the possibility of producing a standard EA needle that is biocompatible. Methods . Biocompatibility was tested by an MTT assay and cytotoxicity testing. Corrosion was observed with a scanning electron microscope (SEM) after 0.5 mA, 60 min stimulation. The straightness was measured using a gap length of 100 mm, and tensile testing was performed by imposing a maximum tensile load. Results . Phosphor bronze, Ni coated SS304, were deemed inappropriate materials because of mild-to-moderate cytotoxicity and corrosion. Ti-6Al-4V and SS316 showed no cytotoxicity or corrosion. Ti-6Al-4V has a 70 times higher cost and 2.5 times lower conductivity than SS316. The results of both straightness and tensile testing confirmed that SS316 can be manufactured as a standard product. Conclusion . As a result, we confirmed that SS316 can be used a new EA electrode material. We hope that a further study of the maximum capacity of low-frequency stimulation using an SS316 for safe operation.
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